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首页> 外文期刊>Physical Review, B. Condensed Matter >Electronic structure and optical properties of quantum rods with wurtzite structure - art. no. 115316
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Electronic structure and optical properties of quantum rods with wurtzite structure - art. no. 115316

机译:具有纤锌矿结构的量子棒的电子结构和光学性质-艺术。没有。 115316

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The Hamiltonian of the wurtzite quantum rods with an ellipsoidal boundary is given after a coordinate transformation. The energies, wave functions, and transition possibilities are obtained as functions of the aspect ratio e with the same method we used on spherical dots. With an overall consideration of both the transition matrix element and the Boltzmann distribution we explained why the polarization factor increases with increasing e and approaches a saturation value, which tallies quite well with the experimental result. When e increases more and more S-z states are mixed into the ground, second, and third states of J(z)=1/2, resulting in an increase of the emission of z polarization. It is just the linear terms of the momentum operator in the hole Hamiltonian that cause the mixing of S and P states in the hole ground state. The effects of the crystal field splitting energy, temperature, and transverse radius to the polarization are also considered. We also calculated the band gap variation with the size and shape of the quantum rods. [References: 15]
机译:经过坐标变换,给出了具有椭圆形边界的纤锌矿量子棒的哈密顿量。使用与球形点相同的方法,可以得到能量,波动函数和跃迁可能性作为纵横比e的函数。综合考虑了过渡矩阵元素和玻尔兹曼分布,我们解释了为什么极化因子会随着e的增加而增加并达到饱和值,这与实验结果相吻合。当e增加时,越来越多的S-z状态混合到J(z)= 1/2的基态,第二和第三状态,导致z极化发射的增加。正是孔哈密顿量中动量算子的线性项导致了孔基态中S和P状态的混合。还考虑了晶体场分裂能,温度和横向半径对极化的影响。我们还计算了带隙随量子棒尺寸和形状的变化。 [参考:15]

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